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Computational Analysis of the Effects of Microstructures on Damage and Fracture in Heterogeneous Materials: Advanced Numerical Tools and Virtual Testing of Microstructures

机译:微结构对非均质材料损伤和断裂的影响的计算分析:先进的数值工具和微结构的虚拟测试

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摘要

3D FE (finite element) simulations of the deformation and damage evolution of particle reinforced composites are carried out for different microstructures of the composites. Several new methods and programs for the automatic reconstruction of 3D microstructures of composites on the basis of the geometrical description of microstructures as well as on the basis of the voxel array data have been developed and tested. Different methods of reconstruction and generation of finite element models of 3D microstructures of composite materials (geometry-based and voxel array based) are discussed and compared. It was shown that FE analyses of the elasto-plastic deformation and damage of composite materials using the microstructural models of materials generated with these methods yield very close results. Numerical testing of composites with random, regular, clustered and gradient arrangements of spherical particles is carried out. The fraction of failed particles and the tensile stress-strain curves were determined numerically for each of the microstructures. It was found that the rate of damage growth as well as the critical applied strain, at which the damage growth in particles begins, depend on the particle arrangement, and increase in the following order: gradient < random < regular < clustered microstructure.
机译:针对复合材料的不同微观结构,对颗粒增强复合材料的变形和损伤演化进行了3D FE(有限元)模拟。已经开发和测试了几种基于微观结构的几何描述以及体素阵列数据自动重建复合材料3D微观结构的新方法和程序。讨论并比较了复合材料3D微观结构的有限元模型的重建和生成方法的不同(基于几何和基于体素阵列的方法)。结果表明,使用这些方法生成的材料的微观结构模型对复合材料的弹塑性变形和损伤进行有限元分析可以得出非常接近的结果。对球形颗粒随机,规则,成簇和梯度排列的复合材料进行了数值测试。对于每个微结构,数值确定了失效颗粒的分数和拉伸应力-应变曲线。发现损伤增长的速率以及在颗粒中开始损伤增长的临界施加应变取决于颗粒排列,并按以下顺序增加:梯度<随机<规则<簇状微观结构。

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